Developing ways to affordably deliver broadband connectivity is one of the major issues of our time. In challenging deployment locations with irregular terrain, traditional Clear-Line-Of-Sight (CLOS) wireless links can be uneconomical to deploy, as the number of required towers make infrastructure investment unviable. With new research focusing on developing wireless diffractive backhaul technologies to provide Non-Line-Of-Sight (NLOS) links, this paper evaluates the engineering-economic implications. A Three-Dimensional (3D) techno-economic assessment framework is developed, utilizing a combination of remote sensing and viewshed geospatial techniques, in order to quantify the impact of different wireless backhaul strategies. This framework is applied to assess both Clear-Line-Of-Sight and diffractive Non-Line-Of-Sight strategies for deployment in Peru, as well as the islands of Kalimantan and Papua, in Indonesia. The results find that a hybrid strategy combining the use of Clear-Line-Of-Sight and diffractive Non-Line-Of-Sight links produces a 9-45 percent cost-efficiency saving, relative to only using traditional Clear-Line-Of-Sight wireless backhaul links.
翻译:发展负担得起的宽带连接是当代的主要问题之一。在地形不规则、具有挑战性且具有挑战性的部署地点中,传统的 " 清晰一线-视觉 " 无线连接(CLOS)无线连接可能不经济,因为需要的塔数目使得基础设施投资无法维持。由于新的研究侧重于开发无线、异光活性回光线技术,以提供非光线-视觉(NLOS)链接,本文件评估了工程-经济影响。开发了一个三维层面(3D)技术-经济评估框架,利用遥感和透视地理空间技术相结合,以量化不同无线反光战略的影响。这个框架用于评估在秘鲁以及印度尼西亚的卡莱曼丹岛和巴布亚岛部署的 " 清晰一线-光线-视觉(Clenine-Of-Sight-Sight-Sight) " 和 " 非光线-光度-视觉-光度(Cleen-Light-Light-Lime-Le-Le-Le-Leal-Link-Slening-Slening-Clearty-Lial-lef-le-Light-Cal-Light-le-Light-Light-Ly-Light-Ly-Ly-Ly-Ly-Ly-Ly-le-Live-Liff-lex-Lis)连接的混合战略的混合战略。这一混合战略将使用一个混合战略结合结合结合结合的混合战略,利用了9455-le-le-Light-Light-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉和D-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉-视觉和节节节节-视觉-视觉和D-视觉-视觉-视觉和D-视觉-视觉-视觉-视觉-视觉-视觉-节节节节节节节节节节节节节节节节节节节节和节节和节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-节-